Target intelligence / Profile preview

Influenza A virus hemagglutinin H5 (H5N1 subtype) (HA (H5))

Target
HA (H5)
Molecular classification
Viral fusion protein, Glycoprotein, Receptor-binding protein, Class I viral fusion protein
01

Overview

Influenza A virus hemagglutinin H5 is a trimeric glycoprotein on the surface of influenza A viruses of the H5N1 subtype and is a key mediator of viral entry into host cells[1][2][3]. HA (H5) binds sialic acid–containing receptors on the respiratory epithelial cells of birds and, less efficiently, humans, facilitating endocytosis of the virus and subsequent fusion of the viral and host membranes in the low pH environment of the endosome[1][3][4]. The HA protein must be cleaved by host proteases into its HA1 and HA2 subunits to become fusion-competent, a feature that also influences pathogenicity; highly pathogenic strains have cleavage sites more susceptible to ubiquitous host proteases, broadening tissue tropism and severity[1]. HA is the principal antigen against which host neutralizing antibodies are generated, making it a focus for vaccine and therapeutic development[1][3]. Mutations in the H5 gene can increase infectivity and host range, including human adaptation, and are closely monitored as markers for pandemic potential[1][2][3][5].

Other names
Influenza hemagglutinin H5H5 hemagglutininH5N1 HAHA H5 subtype
02

Mechanism of action

Fusion inhibition (drugs that block conformational change or fusion peptide exposure) Receptor binding inhibition (antibodies or molecules blocking HA from engaging sialic acid) Antigenic neutralization (neutralizing antibodies prevent virus attachment or membrane fusion)

03

Biological functions

Viral entry (mediates attachment and fusion with host cell membrane)Host cell recognition (binds sialic acid on cell surface)Determination of host rangeKey determinant of pathogenicityMajor target of neutralizing antibodies
04

Disease associations

Infection (primary determinant in avian and zoonotic influenza A H5N1 infections in humans and birds)Virus transmissionHost range and pandemic potential
05

Safety considerations

High genetic variability allows immune escape (antigenic drift and shift)Potential for zoonotic transmission (from birds to humans)Mutation in HA can increase human infectivity and pandemic riskLimited cross-protection between HA subtypes; vaccine design and efficacy may be challenging
06

Interacting drugs

Arbidol (umifenovir) (broad-spectrum fusion inhibitor, blocks viral entry)

3 more in the full profile.

07

Biomarkers

HA subtype detection by PCR or serology (for diagnosis and surveillance of H5N1 infection)HA cleavage site sequence (marker of high pathogenicity in avian species)HA antigenicity (used in vaccine composition and strain selection)

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